IP Library › Granted Patent US 12,140,257
Granted Patent B2
US 12,140,257 · App. 18/125,338 · Granted Nov 12, 2024

Aseptic fluid couplings

Inventors: Jack T. Stangl (Falcon Heights, MN); Loi T. Truong (Savage, MN)
Assignee: Colder Products Company
F16L37/36A61M39/26A61M2205/273F16L37/0982F16L2201/44
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Quick Facts
Patent No.
US 12,140,257
App. No.
18/125,338
Granted
Nov 12, 2024
Kind
B2
Abstract

Some fluid coupling devices described herein are configured for use in fluid systems for purposes of providing a single-use, aseptic disconnection functionality that substantially prevents fluid spillage when being disconnected. In some embodiments, the coupling portions cannot be functionally reconnected to each other after being disconnected from each other. Some fluid coupling device embodiments described herein include a fluid flow path that is a metallic-free. Moreover, some embodiments of the fluid coupling devices provided herein include no metal whatsoever. That is, the fluid coupling devices are entirely metallic-free.

Claims (37)

1. A single-use aseptic fluid coupling assembly defining a longitudinal axis and an open fluid flow path through the fluid coupling assembly along the longitudinal axis, the fluid coupling assembly comprising:

a first coupling comprising:

a first housing;

a first termination member fixedly coupled to the first housing and including a first termination;

a shell that is rotatably coupled to the first housing;

a first valve that is fixedly coupled to the first termination member; and

a shuttle disposed about the first valve, the shuttle being coupled to the shell such that the shuttle is translatable along the longitudinal axis in response to rotation of the shell; and

a second coupling releasably connected to the first coupling and comprising:

a second housing;

a second termination member fixedly coupled to the second housing and including a second termination; and

a second valve movably coupled to the second termination, the second valve being translatable along the longitudinal axis relative to the second termination,

wherein the first valve is releasably latched to the second valve.

2. The fluid coupling assembly of claim 1 , wherein the fluid coupling assembly is metallic-free.

3. The fluid coupling assembly of claim 1 , further comprising a valve gasket compressed between an outer annular face portion of the first valve and an outer annular face portion of the second valve.

4. The fluid coupling assembly of claim 1 , wherein the shell includes one or more projections that are movably disposed in one or more slots defined by the shuttle.

5. The fluid coupling assembly of claim 4 , wherein the one or more slots each include: (i) a spirally-extending portion and (ii) a circumferentially-extending portion.

6. The fluid coupling assembly of claim 1 , wherein the shuttle is releasably coupled to the second housing.

7. The fluid coupling assembly of claim 1 , wherein the first coupling is separable from the second coupling by rotating the shell and then longitudinally separating the first and second couplings from each other.

8. The fluid coupling assembly of claim 7 , wherein the rotating the shell unlatches the first valve from the second valve.

9. The fluid coupling assembly of claim 7 , wherein the rotating the shell uncouples the shuttle from the second housing.

10. The fluid coupling assembly of claim 7 , wherein the first and second couplings cannot be separated from each other until: (i) the first valve is in a closed configuration relative to the shuttle and (ii) the second valve is in a closed configuration relative to the second termination member.

11. The fluid coupling assembly of claim 10 , wherein the rotating the shell moves the first and second valves to the closed configurations.

12. A single-use aseptic fluid coupling assembly defining a longitudinal axis and an open fluid flow path through the fluid coupling assembly along the longitudinal axis, the fluid coupling assembly comprising:

a first coupling comprising:

a first housing;

a shell that is rotatably coupled to the first housing; and

a first valve; and

a second coupling releasably connected to the first coupling and comprising:

a second housing; and

a second valve, the second valve being translatable along the longitudinal axis,

wherein the first valve is releasably latched to the second valve, and

wherein, once the first and second couplings have been unconnected from each other, the first and second couplings cannot be reconnected to define the open fluid flow path.

13. The fluid coupling assembly of claim 12 , wherein the shell includes one or more projections that are movably disposed in one or more slots defined by a shuttle.

14. The fluid coupling assembly of claim 13 , wherein the first coupling further comprises the shuttle disposed about the first valve, the shuttle being coupled to the shell such that the shuttle is translatable along the longitudinal axis in response to rotation of the shell.

15. The fluid coupling assembly of claim 12 , further comprising a valve gasket compressed between an outer annular face portion of the first valve and an outer annular face portion of the second valve.

16. The fluid coupling assembly of claim 12 , wherein the fluid coupling assembly is metallic-free.

17. The fluid coupling assembly of claim 12 , wherein the first and second couplings cannot be unconnected from each other until both the first valve and the second valve are in a closed configuration.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2023
From: STANGL, JACK T.; TRUONG, LOI T.
To: COLDER PRODUCTS COMPANY
Reel/Frame 063652/0848 →
Continuity (2)
Provisional Application 63344786 · May 23, 2022
Related Publication 20230400135A1 · Dec 14, 2023
Cited By (1)
US 12,421,074